On the Mass Transfer in the 3D Pitaevskii Model

Author:

Jang Juhi,Jayanti Pranava ChaitanyaORCID,Kukavica Igor

Abstract

AbstractWe examine a micro-scale model of superfluidity derived by Pitaevskii (Sov. Phys. JETP 8:282-287, 1959) which describes the interacting dynamics between superfluid He-4 and its normal fluid phase. This system consists of the nonlinear Schrödinger equation and the incompressible, inhomogeneous Navier-Stokes equations, coupled to each other via a bidirectional nonlinear relaxation mechanism. The coupling permits mass/momentum/energy transfer between the phases, and accounts for the conversion of superfluid into normal fluid. We prove the existence of global weak solutions in $${\mathbb {T}}^3$$ T 3 for a power-type nonlinearity, beginning from small initial data. The main challenge is to control the inter-phase mass transfer in order to ensure the strict positivity of the normal fluid density, while obtaining time-independent a priori estimates.

Funder

Division of Mathematical Sciences

Publisher

Springer Science and Business Media LLC

Reference51 articles.

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